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Assessing the Creep Resistance of Modified Chromium Steels
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September Zlín, Czech Republic
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Foldyna, V.; Jakobová, A.; Kupka, V.: Assessing the Creep Resistance of Modified Chromium Steels, Proc. VIIIth Intern. Symp. on Creep Resistant Metallic Materials, September 1991, Zlín, Czech Republic, p. 186/94.
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Proc. VIIIth Intern. Symp. on Creep Resistant Metallic Materials
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Foldyna, V.1
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5
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0037990578
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The Assessment of Creep Rupture Strength of Modified Chromium Steels
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[eds.:] B. Wilshire and R.W. Ewans, The Institute of Metals, London, U.K. April
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Foldyna, V.; Jakobová, A.; Kupka, V.: The Assessment of Creep Rupture Strength of Modified Chromium Steels, Proc. 5th Intern. Conf. on Creep and Fracture of Engineering Materials and Structures, [eds.:] B. Wilshire and R.W. Ewans, The Institute of Metals, London, U.K. April, 1993, p.573/82.
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Proc. 5th Intern. Conf. on Creep and Fracture of Engineering Materials and Structures
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Foldyna, V.1
Jakobová, A.2
Kupka, V.3
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6
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85033836686
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Microstructural Stability Studies on Creep Resistant 12Cr Power Plant Steels
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Hradec nad Moravicí, Czech Republic, September to be published
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Strang, A.; Vodárek, V.: Microstructural Stability Studies on Creep Resistant 12Cr Power Plant Steels, Proc. 9th Intern. Symp. on Creep Resistant Metallic Materials, Hradec nad Moravicí, Czech Republic, September 1996, to be published.
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Proc. 9th Intern. Symp. on Creep Resistant Metallic Materials
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Strang, A.1
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7
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0012057717
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Properties of 9Cr-1.8W Steel with High Creep Strength for USC Boiler Piping and Tubing Applications
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Liège, Belgium, October
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Mimura, H.; Ohgami, M.; Naoi, H.; Fujita, T.: Properties of 9Cr-1.8W Steel with High Creep Strength for USC Boiler Piping and Tubing Applications, Proc. 5th Conf. Materials for Advanced Power Engineering 1994, Liège, Belgium, October 1994, p. 361/72.
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Proc. 5th Conf. Materials for Advanced Power Engineering 1994
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0001900929
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Steam Turbine Materials: High Temperature Forgings
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Berger, C.; Scarlin, B.; Mayer, K. H.; Thornton, D. V.; Beech, S. M.: Steam Turbine Materials: High Temperature Forgings, ibid, p. 47/72.
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Proc. 5th Conf. Materials for Advanced Power Engineering 1994
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0002460613
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Chromium Modified Steels - Metallurgical Understanding
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Foldyna, V.; Jakobová, A.; Vodárek, V.; Kubon, Z.: Chromium Modified Steels - Metallurgical Understanding, ibid, p. 453/64.
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Proc. 5th Conf. Materials for Advanced Power Engineering 1994
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11
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85033856919
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Development of large-scale 12Cr Ferritic Steel Turbine Rotor Aiming the Application of Ultra Supercritical Steam Power Plant at 650°C
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April Newcastle upon Tyne, U.K.
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Hidaka, K., et al.: Development of large-scale 12Cr Ferritic Steel Turbine Rotor Aiming the Application of Ultra Supercritical Steam Power Plant at 650°C, Proc. 3rd Intern. Charles Parsons Conf. Materials Engineering in Turbines and Compressors, April 1995, Newcastle upon Tyne, U.K., p. 191/200.
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Proc. 3rd Intern. Charles Parsons Conf. Materials Engineering in Turbines and Compressors
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Hidaka, K.1
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15
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0002512860
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Materials Comparisons between Nf616, HCM12A and TB12M-III: Microstructural Stability and Ageing
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May London, U.K.
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Hald, J.: Materials Comparisons Between Nf616, HCM12A and TB12M-III: Microstructural Stability and Ageing, EPRI National Power Conf. New Steels for Advanced Plant up to 620°C, May 1995, London, U.K., p. 152/73.
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EPRI National Power Conf. New Steels for Advanced Plant Up to 620°C
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Thermodynamic Prediction of Microstructure
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Cambridge University, Cambridge, U.K., June, paper No. 9
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Hald, J., Kubon, Z.: Thermodynamic Prediction of Microstructure, [in:] Microstructural Development and Stability in High Chromium Ferritic Power Plant Steels, Cambridge University, Cambridge, U.K., June 1995, paper No. 9.
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Microstructural Development and Stability in High Chromium Ferritic Power Plant Steels
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Hald, J.1
Kubon, Z.2
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21
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5544277875
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Review of Steam Turbine rotor Steels for Supercritical Operation
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Kluwer Academic Publishers
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Greenfield, P.: Review of Steam Turbine rotor Steels for Supercritical Operation, Proc. High Temperature Materials for Power Engineering 1990, Kluwer Academic Publishers, p. 423/44.
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Proc. High Temperature Materials for Power Engineering
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85033867891
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Masuyama, F.; Yokoyama, T.: see [7], p. 301/08
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Masuyama, F.; Yokoyama, T.: see [7], p. 301/08.
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85033846178
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Foldyna, V.; Kubon, Z.; Jakobová, A.; Vodárek, V.: see [16], paper No. 4
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Foldyna, V.; Kubon, Z.; Jakobová, A.; Vodárek, V.: see [16], paper No. 4.
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Cerjak, H.; Foldyna, V.; Höfer, P.; Schaffernak, B.: see [16], paper No. 8
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Cerjak, H.; Foldyna, V.; Höfer, P.; Schaffernak, B.: see [16], paper No. 8.
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25
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5544295402
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Assessment of Creep Resistance of 9-12% Cr Steels with Respect to Strengthening and Degradation Processes
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Milano, Italy, October
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Foldyna, V.; Jakobová, A.; Kubon, Z.: Assessment of Creep Resistance of 9-12% Cr Steels with Respect to Strengthening and Degradation Processes, Proc. Intern. Conf. Materials Aging and Component Life Extension, Milano, Italy, October 1995, p. 15/24.
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Proc. Intern. Conf. Materials Aging and Component Life Extension
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26
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0004266529
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[eds.:] A. Kelly and R.B. Nicholson, Applied Sci. Publ., London
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Simulation of the Deformation Behaviour of Martensitic 9-12% Chromium Steels on Microstructural Basis
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Padua/Venice, Italy, September
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Polcik, P.; Straub, S.; Blum, W.: Simulation of the Deformation Behaviour of Martensitic 9-12% Chromium Steels on Microstructural Basis, Proc. 4th Europ. Conf. on Advanced Materials and Processes, Padua/Venice, Italy, September 1995, p. 313/18.
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Proc. 4th Europ. Conf. on Advanced Materials and Processes
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0021542696
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Effect of Dispersed Phase on Creep Resistance of 9% Cr-Mo(V) Steel
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[eds.:] B. Wilshire and D. R. J. Owen, Pineridge Press, Swansea, U.K. April
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Foldyna, V. et al.: Effect of Dispersed Phase on Creep Resistance of 9% Cr-Mo(V) Steel, Proc. 2nd Intern. Conf. on Creep and Fracture of Engineering Materials and Structures, [eds.:] B. Wilshire and D. R. J. Owen, Pineridge Press, Swansea, U.K. April, 1984, p. 685/96.
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Proc. 2nd Intern. Conf. on Creep and Fracture of Engineering Materials and Structures
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85033848941
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Vergleich der Mikrostruktur des martensitischen Schmiedestahles X16CrWMoVNbN 11-2 bei 600 und 650°C nach Zeitstandbeanspruchung
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Straub, S.; Polcik, P.; Kiesbaer, M.; Blum, W.; Mayer, K.H.: Vergleich der Mikrostruktur des martensitischen Schmiedestahles X16CrWMoVNbN 11-2 bei 600 und 650°C nach Zeitstandbeanspruchung, ibid., p. 106/19.
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Untersuchung der Eigenschaften des 9%-Chromstahles Vom Typ 9Cr-0.5Mo-1.8W-V-Nb Im Hinblick Auf Seine Verwendung Als Rohrleitungs- und Kesselbaustahl, 18
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Straub, S.1
Polcik, P.2
Kiesbaer, M.3
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Mayer, K.H.5
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